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A bi-objective coordination setup problem in a two-stage production system

机译:两阶段生产系统中的双目标协调设置问题

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This paper addresses a problem arising in the coordination between two consecutive departments of a production system, where parts are processed in batches, and each batch is characterized by two distinct attributes. Due to the lack of interstage buffering between the two stages, these departments have to follow the same batch sequence. In the first department, a setup occurs every time the first attribute of a new batch is different from the one of the previous batch. In the downstream department, there is a setup when the second attribute changes in two consecutive batches. The problem consists in finding a batch sequence optimizing the number of setups paid by each department. This case results in a particular bi-objective combinatorial optimization problem. We present a geometrical characterization for the feasible solution set of the problem, and we propose three effective heuristics, as shown by an extensive experimental campaign. The proposed approach can be also used to solve a class of single-objective problems, in which setup costs in the two departments are general increasing functions of the number of setups. (C) 2006 Elsevier B.V. All rights reserved.
机译:本文解决了在生产系统的两个连续部门之间进行协调时出现的问题,在该部门中,零件是分批处理的,每个批次具有两个不同的属性。由于两个阶段之间缺乏阶段间缓冲,因此这些部门必须遵循相同的批处理顺序。在第一个部门中,每当新批次的第一个属性与先前批次的第一个属性不同时,就会进行设置。在下游部门中,当第二个属性连续两个批次更改时,将进行设置。问题在于找到一个批处理序列,以优化每个部门支付的设置数量。这种情况导致一个特定的双目标组合优化问题。我们提出了问题的可行解集的几何特征,并提出了三种有效的启发式方法,如广泛的实验活动所示。所提出的方法还可以用于解决一类单目标问题,其中两个部门中的设置成本是设置数量的总体增加函数。 (C)2006 Elsevier B.V.保留所有权利。

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